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首页> 外文期刊>日本建築学会计画論文集 >Impacts of Muddy Bed Aggregates on Sediment Transport and Management in the Tidal James River, VA
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Impacts of Muddy Bed Aggregates on Sediment Transport and Management in the Tidal James River, VA

机译:泥浆床综合对潮汐运输与管理的影响,詹姆斯河,VA

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摘要

Aggregation state significantly influences the size, density, and transport characteristics of fine sediment. Understanding sediment transport and deposition processes in the nation's navigable waterways is a primary mission for the US Army Corps of Engineers (USACE), particularly when it comes to infilling of navigation channels. In this study, a newly developed camera system was used to evaluate the aggregation state of eroded sediment from cores collected in the tidal James River, VA. Results showed that bed sediments were composed mostly of mud, but that erosion predominately occurred in the form of aggregates with median sizes 50-270 times larger than the disaggregated sediment. Aggregate size weakly correlated to shear stress at levels <2 Pa, as well as sand content and bed density. A numerical simulation demonstrated that mud aggregates were predicted to transport in incipient suspension or bedload, while disaggregated fines were predominately maintained in full suspension. This difference in transport mode has significant implication for channel infilling and sediment transport within the system.
机译:聚集状态显着影响细沉积物的尺寸,密度和传输特性。了解国家通航水道中的沉积物运输和沉积过程是美国陆军工程师(USACE)的主要任务,特别是在涉及缺陷导航渠道时。在这项研究中,新开发的相机系统用于评估来自詹姆斯河,VA中收集的核心腐蚀沉积物的聚集状态。结果表明,床沉积物主要由泥土组成,但腐蚀主要以聚集体的形式发生,中值尺寸比分解沉积物大50-270倍。聚集尺寸弱相关与水平<2Pa的剪切应力,以及砂含量和床密度。数值模拟表明,预测泥浆聚集体在初始悬浮液或床单中运输,而分解细粒主要保持在全悬浮液中。传输模式的这种差异对系统内的信道infilling和沉积物运输具有显着意义。

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  • 来源
    《日本建築学会计画論文集》 |2020年第5期|04020028.1-04020028.16|共16页
  • 作者单位

    Engineer Research and Development Center-Coastal and Hydraulics Laboratory US Army Corps of Engineers Vicksburg MS 39180;

    Engineer Research and Development Center-Coastal and Hydraulics Laboratory US Army Corps of Engineers Vicksburg MS 39180;

    Engineer Research and Development Center-Coastal and Hydraulics Laboratory US Army Corps of Engineers Vicksburg MS 39180;

    Virginia Institute of Marine Science William & Mary Gloucester Point VA 23062;

    Virginia Institute of Marine Science William & Mary Gloucester Point VA 23062;

    Virginia Institute of Marine Science William & Mary Gloucester Point VA 23062;

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